喷雾液滴冲击非刚性沉积层变形行为的初步研究

Fuyang Cao, Lei Yu, Lunyong Zhang, Hongxian Shen, Sida Jiang, Xu Gu, Heqian Song, Zhiliang Ning, Yongjiang Huang, Jianfei Sun
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引用次数: 0

摘要

喷射成形技术已被广泛应用于各种工业领域中。了解液滴对沉积层的冲击过程是优化喷射成形工艺,提高最终铸件质量的关键。本文研究了撞击过程中液滴和沉积层的形态演变,重点研究了实际喷射成形过程中沉积层的非刚性特征。结果表明:在飞沫的冲击下,堆积层会发生明显的变形,在堆积层上形成水坑状结构;当液滴温度不够高时,液滴的扩散过程会受到水坑状结构的抑制,液滴与沉积层之间可能会产生间隙,从而在最终铸件中产生微小的孔洞。此外,模拟结果表明,多个液滴的撞击会在沉积层上形成柱状结构,这将严重增加最终铸件的表面粗糙度。研究表明,在研究喷射成形铸件的组织演变和机理时,应考虑沉积层的力学性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preliminary study on deformation behaviors of spray droplet impacting on nonrigid deposited layer

Spray forming technology has been adopted to prepare essential castings in various industry fields. Understanding what happen during the impaction of droplet on deposited layer is critical to optimize spray forming processes and so improve the final casting quality. The present work investigated the morphology evolution of droplet and deposited layer during impaction, with particularly emphasis on the nonrigid feature of deposited layer in practical spray forming. The results demonstrate that the deposited layer would suffer obvious deformation under the impaction of flighting droplet, which produce puddle-like structure on the deposited layer. The droplet spreading process would be suppressed by this puddle-like structure when the droplet temperature is not high enough, which might introduce gap between the droplet and the deposited layer, so might cause tiny holes in the final casting. Moreover, the simulation results suggest that multiple droplet impaction might cause column structure on the deposited layer, this would seriously increase the surface roughness of the final casting. The investigations hint that the mechanical properties of deposited layer should be considered when studying the microstructure evolution and mechanism of spray forming casting.

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